Development Of Novel And Selective Anticancer Drugs Derived From Cysteine.
Funder
National Health and Medical Research Council
Funding Amount
$264,250.00
Summary
In the next few years cancer is projected to become the leading cause of death in industrialised countries. Cancer chemotherapy currently relies on destruction of tumours by toxic drugs that indiscriminately kill all cell types, resulting in side effects that limit treatment. In the 21st century new cancer drugs will more effectively destroy malignant tumour cells without damaging normal cells. The R and D herein will value-add to our discovery of a new class of potent and orally active anti-tum ....In the next few years cancer is projected to become the leading cause of death in industrialised countries. Cancer chemotherapy currently relies on destruction of tumours by toxic drugs that indiscriminately kill all cell types, resulting in side effects that limit treatment. In the 21st century new cancer drugs will more effectively destroy malignant tumour cells without damaging normal cells. The R and D herein will value-add to our discovery of a new class of potent and orally active anti-tumour drugs that possess unusually high selectivity in acting on cancer cells without killing normal human cells. Our current proof of concept will be turned into a drug development candidate that will improve our negotiating position with commercial partners.Read moreRead less
Biomarkers And EGFR Inhibitor Treatment Of Lung Cancer
Funder
National Health and Medical Research Council
Funding Amount
$286,328.00
Summary
Non-Small Cell Lung Cancer (NSCLC) remains the most frequent cause of cancer death in the Australian population. This laboratory research will involve researchers across a number of centres in Australia. The research is focused on the effects of a new targeted cancer drug called cetuximab. The Epidermal Growth Factor Receptor (EGFR) pathway is an important cause of NSCLC in many patients, and this is blocked by cetuximab. The advent of new targeted cancer therapies, which block specific cancer p ....Non-Small Cell Lung Cancer (NSCLC) remains the most frequent cause of cancer death in the Australian population. This laboratory research will involve researchers across a number of centres in Australia. The research is focused on the effects of a new targeted cancer drug called cetuximab. The Epidermal Growth Factor Receptor (EGFR) pathway is an important cause of NSCLC in many patients, and this is blocked by cetuximab. The advent of new targeted cancer therapies, which block specific cancer pathways in the cell, has highlighted the need for detailed knowledge about how these therapies work at the molecular level, so that we can make best use of them. The laboratory studies will be on tissues taken from patients with NSCLC who are receiving chemotherapy then going on to surgery to have the cancers removed. Tumour samples will be taken prior to treatment, and then the surgical resection will also be analysed. Sequential blood samples will also be taken. Prior to surgery, patients will receive a 9 week course of chemotherapy with cisplatin and docetaxel to shrink the cancer. In addition, some patients will be randomised to receive cetuximab along with chemotherapy. In the laboratory, we will investigate whether various measures of activation of the EGFR pathway in the cancer and in blood predict for response to cetuximab. We will also investigate how the changes in tumour with cetuximab treatment differ from tumours not treated with the drug. We will be examining the genes and proteins of EGFR and those of a number of related pathways. a number of related receptor, along with From this we will attempt to understand which patients benefit most from the drug and also in what specific ways the cancer cells are affected by the treatment.Read moreRead less
Molecular And Cellular Determinants Of Tubulin-targeted Drug Action
Funder
National Health and Medical Research Council
Funding Amount
$484,500.00
Summary
Cancer is the leading cause of death in developed countries. Despite advances in the use of combination chemotherapy, drug resistance is the major cause of treatment failure. An important component in the treatment of many childhood and adult cancers are the antimicrotubule agents. These drugs target an important part of the cell skeleton called the tubulin-microtubule system that is responsible for many important events including cell division. It is the ability of these drugs to disrupt cell d ....Cancer is the leading cause of death in developed countries. Despite advances in the use of combination chemotherapy, drug resistance is the major cause of treatment failure. An important component in the treatment of many childhood and adult cancers are the antimicrotubule agents. These drugs target an important part of the cell skeleton called the tubulin-microtubule system that is responsible for many important events including cell division. It is the ability of these drugs to disrupt cell division in cancer cells that makes them so effective and such important targets for new drug design. Unfortunately, the reasons why tumours develop resistance to these drugs or even why some tumours do respond well is not understood. This proposal will determine how the makeup and stability of the tubulin-microtubule proteins influences how these drugs work in both childhood and adult tumour cells. Finally, components of drug resistant tumour cells will be examined using technology that allows us to simultaneously separate and identify hundreds of proteins some of which may provide useful targets for the design of new drugs for the treatment of cancer. To improve cancer survival rates it is essential to accurately target the use of existing drugs and to identify new targets for anticancer drug development.Read moreRead less
Proteomic Screening For Apoptotic Markers In Breast Cancer
Funder
National Health and Medical Research Council
Funding Amount
$531,696.00
Summary
The induction of apoptosis, or programmed cell death, is a key factor in the response of tumours to chemotherapeutic agents and ionising radiation; therefore biological markers that predict the clinical outcome to these therapies are needed. Over the past 2 years, our laboratory has developed techniques of protein analysis to evaluate changes in proteins during apoptosis caused by chemotherapeutic agents. Preliminary protein profiling studies of apoptosis induction in human breast cancer cell li ....The induction of apoptosis, or programmed cell death, is a key factor in the response of tumours to chemotherapeutic agents and ionising radiation; therefore biological markers that predict the clinical outcome to these therapies are needed. Over the past 2 years, our laboratory has developed techniques of protein analysis to evaluate changes in proteins during apoptosis caused by chemotherapeutic agents. Preliminary protein profiling studies of apoptosis induction in human breast cancer cell lines showed time-dependent decreases in two proteins, identified as S100A6 and ubiquitin. Both are known to be important in cell function. In the proposed project we will build on our preliminary findings to provide important new information central to the understanding of cancer cell biology and apoptosis in addition to evaluating the ability of anti-cancer treatments to induce apoptosis. Using a combination of protein analysis technologies, this project has the potential to provide reliable and novel biomarkers which will indicate the efficacy and selectivity of anti-cancer treatments in inducing tumour cell death. The knowledge gained in this project will aid clinical assessment of the response to cancer treatment(s) in patients in the form of specific screening assays, and may result in identification and development of effective new agents for cancer treatment and prevention. Furthermore, the outcomes of this project will increase our understanding of fundamental cancer cell biology and apoptosis.Read moreRead less
LIM KINASE 1 (LIMK1) AND METASTASIS, THE SEARCH FOR LIMK1 INHIBITORS
Funder
National Health and Medical Research Council
Funding Amount
$461,250.00
Summary
Disseminated cancer, unlike the localized disease, can rarely be cured by drug therapy. We have found that LIM kinase (LIMK1), a protein that was discovered in our laboratory, plays an important role in controlling the ability of tumour cells to spread, a process called metastasis. Thus, this protein becomes an important target for the development of new drug therapies to prevent the spread of cancer. Importantly, we have demonstrated that (1) inhibiting LIMK1 blocks the formation of metastatic ....Disseminated cancer, unlike the localized disease, can rarely be cured by drug therapy. We have found that LIM kinase (LIMK1), a protein that was discovered in our laboratory, plays an important role in controlling the ability of tumour cells to spread, a process called metastasis. Thus, this protein becomes an important target for the development of new drug therapies to prevent the spread of cancer. Importantly, we have demonstrated that (1) inhibiting LIMK1 blocks the formation of metastatic tumours in mice, and (2) introduction of this protein into tumour cells makes them more invasive. In addition, we find that the level of LIMK1 is much higher in human tumour cell lines that have the propensity to easily form tumours in mice. Also, measuring the level of this protein in cancer cells that spread to other organs shows that it is at significantly elevated levels when compared to normal tissue. The goals of this research are to: (1) understand whether the ability of LIMK1 to regulate tumour spreading and invasiveness correlates with its ability to control metastasis; (2) examine in human tumour samples whether the levels of LIMK1 correlate with the development of metastatic tumours; and (3) search for drugs that can inhibit the activity of this protein. The results from this research will be highly significant because LIMK1 levels are likely to be an important marker for which tumours will become metastatic. It is possible that, at the time of tumour diagnosis, LIMK1 measurements will enable the clinician to predict whether an individual tumour will become metastatic. Secondly, this protein is a novel drug development target. Drugs that inhibit this protein may block the ability of tumours to invade and metastasise.Read moreRead less
The Human Papilloma Virus Oncoprotein E7 Degrades The Retinoblastoma Protein By Enhancing Calpain Activity
Funder
National Health and Medical Research Council
Funding Amount
$258,067.00
Summary
Cervical cancer is the second most prevalent cancer worldwide and the fifth leading cause of cancer deaths in women. Approximately 470,000 new cases are diagnosed annually. In most cases cervical cancer is thought to be caused by certain types of the human papillomavirus. Human papillomavirus makes a seies of proteins that cause the destruction of key host proteins in the cells they infect. This destruction is central to the formation of cervical cancer. We have recently discovered that we can p ....Cervical cancer is the second most prevalent cancer worldwide and the fifth leading cause of cancer deaths in women. Approximately 470,000 new cases are diagnosed annually. In most cases cervical cancer is thought to be caused by certain types of the human papillomavirus. Human papillomavirus makes a seies of proteins that cause the destruction of key host proteins in the cells they infect. This destruction is central to the formation of cervical cancer. We have recently discovered that we can prevent this destruction and rescue the key host proteins using inhibitors of the enzyme calpain. Here we seek to determine whether calpain inhibitors could find application in the treatment of human papillomavirus associated cancer.Read moreRead less